Systematic Reviews
Copyright ©The Author(s) 2022.
World J Stem Cells. Dec 26, 2022; 14(12): 851-867
Published online Dec 26, 2022. doi: 10.4252/wjsc.v14.i12.851
Table 1 Biomaterial applications to enhance the therapeutic potential of stem/progenitor cells for ischemic stroke treatment
Ref.Type and source of stem cellsType of biomaterials usedBiomaterial-based optimization strategyType of ischemic stroke modelBeneficial outcomes
Yang et al[12], 2015MSCs from human adipose tissuePβAEGenetically engineered hMSCs to overexpress GDNF using PβAEHypoxic-ischemic mice brainsEnhanced neurobehavioral functions of animals after transplantation in ischemic stroke model
Lin et al[22], 2017MSCs from SD rat bone marrowASP-SPION nanocomplexConjugation of cationic amylose and SPIONs to produce cationic nanoparticlesMCAO SD ratsA rapid and highly efficient approach for MSCs magnetic labelling, with no destructive effects on cells
Huang et al[24], 2017MSCs from bone marrow of 3 wk male SD ratPA-CLEVSRKNC peptideMSCs co-modified with PA-CLEVSRKNC peptideMCAO SD ratsEffectively guide and homing a large amount of MSCs to the ischemic brain directly and enhanced miR-133b expression level
Tian et al[26], 2018MSC-derived exosomes from mousecRGD-Exo[c(RGDyK)] peptide conjugated to MSCs exosome and loaded with curcuminMCAO miceSuccessfully targeted ischemic area, with inflammatory response and cellular apoptosis were suppressed effectively in the lesion region
Kim et al[34], 2020MSC-derived exosomes from rat MNVMNV derived from IONP-harboring MSCsMCAO ratsIschemic lesion targeting, and the therapeutic outcome improved
Zamproni et al[40], 2019MSCs from bone marrow from adult C57/BI6 mousePLA-PRM scaffoldsPRM microspheres produced by RJS and conjugated with the MSCs in the scaffoldMCAO miceRetention time of MSCs in the injury site increased, possibly through upregulation of α6-integrin and CXCL12
Hsu et al[43], 2021MSCs from mouse HUVEC and umbilical cord blood3D MSCs/ECs spheroidsPreassembled 3D spheroids with MSCs and vascular ECsMCAO miceCell retention, structural and motor function recovery significantly improved in the ischemic stroke brain
Ghuman et al[49], 2021NSCs from SVZ of 2-mo-old mousePEG microspheresPEG microsphere encapsulated the NSCs and ECs with suspension in ECM hydrogelPhotothrombotic and MCAO ratsProvision of ideal microenvironment, with highly efficient cell delivery to the damaged area
Ge et al[53], 2022NSCs from neocortices of day 14.5 mouse embryoLbL-NSCsLbL assembly of NSCs using gelatin and HADistal MCAO miceLbL-NSCs engraftment enhanced NSC survival and neurogenesis; promotion of endogenous neuroblasts migration to the ischemic region
Shabani et al[56], 2022NSCs from 14-d-old murine embryoPLGA-PEGNSC encapsulation within PLGA-PEG and loaded with ReelinPhotothrombotic micePLGA-PEG with Reelin enhanced the NSCs proliferation, survival and differentiation
Li et al[59], 2022NSCs from hippocampus of fetal ratMNBsMNBs were fabricated through self-assembly of PSCE-modified (γ-Fe2O3SPIONPs) and internalized within NSCs in the ratio of 1:10Photothrombotic miceMNBs activate Plezo1-Ca2+ -BMP2/Smad signaling pathway, inducing NSCs differentiation; efficiently tracking and imaging the MNBs-labelled NSCs using MRI and ultrasound
Zhang et al[67], 2021Mouse iPSC cell line3D microscaffold culture using AATS mediumSimplified and chemically defined AATS medium for robust production of iPSCs-derived ECs and SMCsPermanent MCAO miceECs and SMCs successfully grown in simple, cost effective AATS medium, allowing GMP large scale production of these cells
McCrary et al[68], 2022Mouse iPSC cell lineCS-A + iPSCs-NPCsiPSCs-derived NPCs were encapsulated in CS-A hydrogel MCAO micePromote regenerative microglia/macrophage response via IL-10 accumulation; improvements of post-stroke neuropsychiatric deficits
Zhang et al[72], 2013NPCs from cerebellum of neonatal mousefmSiO4@SPIONSPIONs were modified with fmSiO4 to label and track the NPCsMCAO miceLabelled cells successfully migrating to the lesion with highly effective cell imaging and cell tracking
Somaa et al[73], 2017NPCs from human ESCSAP hydrogel scaffoldSAP hydrogel scaffold was synthesized using laminin-derived epitope (IKVAV) MCAO ratsEmbedding in a self-assembling scaffold formed de novo "bio-bridges" between the lesions for prolonged survival, therapeutic efficacy and integration of neural grafts
Li et al[78], 2013EPCs from human umbilical cord bloodSiO4@ SPIONsEPCs were labelled with SiO4@SPIONs and magnetic exterior to guide the cell migration to ischemic areaTransient MCAO miceDual benefit of cell homing and cell tracking were achieved; Atrophic volume of brain was reduced while the microvessel density and VEGF expression were increased
Wang et al[80], 2019EPCs from human umbilical cord bloodAlkyl-PEI encapsulated SPIONsAlkyl-PEI/SPIONs were used to direct delivery of siRNA to EPCsPhotothrombotic micePHD2 silencing in EPCs improved the migration and survival of the cells through elevation of CXCR4 and HIF-1α expression
Payne et al[82], 2019NEPCs from human fibroblastsHAMC hydrogelHAMC as co-delivery agent to deliver cortically specified-NEPCs into a specific ischemic areaMCAO SD ratsHAMC led to cell survival along the migration process for more mature cells formation and increased host tissue repairs
Fujioka et al[86], 2017NeuroblastsLaminin-rich hydrogelLaminin-rich scaffold was developed with β1 integrins to facilitate neuronal migration toward an injured areaMCAO miceAble to mimic the vasculature and increased neuroblasts chain formation and migration toward the infarct area of brain tissue